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0014-Fix-primitive-un-boxing-issues.patch
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0014-Fix-primitive-un-boxing-issues.patch
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From 0000000000000000000000000000000000000000 Mon Sep 17 00:00:00 2001
From: LexManos <LexManos@gmail.com>
Date: Thu, 11 May 2017 03:24:33 -0700
Subject: [PATCH] Fix primitive un/boxing issues.
diff --git a/src/org/jetbrains/java/decompiler/modules/decompiler/ExprProcessor.java b/src/org/jetbrains/java/decompiler/modules/decompiler/ExprProcessor.java
index 03a59cb999d3d05d647128c96007e9743938a0ea..474ffda1b9d610968bd12160f2153713b37f2db9 100644
--- a/src/org/jetbrains/java/decompiler/modules/decompiler/ExprProcessor.java
+++ b/src/org/jetbrains/java/decompiler/modules/decompiler/ExprProcessor.java
@@ -876,12 +876,14 @@ public class ExprProcessor implements CodeConstants {
if (unbox) {
// "unbox" invocation parameters, e.g. 'byteSet.add((byte)123)' or 'new ShortContainer((short)813)'
- if (exprent.type == Exprent.EXPRENT_INVOCATION && ((InvocationExprent)exprent).isBoxingCall()) {
- InvocationExprent invocationExprent = (InvocationExprent)exprent;
- exprent = invocationExprent.getLstParameters().get(0);
- int paramType = invocationExprent.getDescriptor().params[0].type;
- if (exprent.type == Exprent.EXPRENT_CONST && ((ConstExprent)exprent).getConstType().type != paramType) {
- leftType = new VarType(paramType);
+ if (exprent.type == Exprent.EXPRENT_INVOCATION) {
+ InvocationExprent invocationExprent = (InvocationExprent) exprent;
+ if (invocationExprent.isBoxingCall() && !invocationExprent.shouldForceBoxing()) {
+ exprent = invocationExprent.getLstParameters().get(0);
+ int paramType = invocationExprent.getDescriptor().params[0].type;
+ if (exprent.type == Exprent.EXPRENT_CONST && ((ConstExprent) exprent).getConstType().type != paramType) {
+ leftType = new VarType(paramType);
+ }
}
}
}
diff --git a/src/org/jetbrains/java/decompiler/modules/decompiler/exps/FunctionExprent.java b/src/org/jetbrains/java/decompiler/modules/decompiler/exps/FunctionExprent.java
index 161f55c45a3f2c199fcc24b9fdd1bd269bafbfb8..068e44b80f9972be77bfd9fe095a5549edf40a2f 100644
--- a/src/org/jetbrains/java/decompiler/modules/decompiler/exps/FunctionExprent.java
+++ b/src/org/jetbrains/java/decompiler/modules/decompiler/exps/FunctionExprent.java
@@ -566,6 +566,19 @@ public class FunctionExprent extends Exprent {
}
if (funcType <= FUNCTION_I2S) {
+ // We can't directly cast some object types, so we need to make sure the unboxing happens.
+ // The types seem to be inconsistant but there is no harm in forcing the unboxing when not strictly needed.
+ // Type | Works | Doesn't
+ // Integer| LFD | BCS
+ // Long | FD | I
+ // Float | D | IL
+ // Double | | ILF
+ if (lstOperands.get(0).type == Exprent.EXPRENT_INVOCATION) {
+ InvocationExprent inv = (InvocationExprent)lstOperands.get(0);
+ if (inv.isUnboxingCall()) {
+ inv.forceUnboxing(true);
+ }
+ }
return wrapOperandString(lstOperands.get(0), true, indent, tracer).prepend("(" + ExprProcessor.getTypeName(
TYPES[funcType - FUNCTION_I2L]) + ")");
}
diff --git a/src/org/jetbrains/java/decompiler/modules/decompiler/exps/InvocationExprent.java b/src/org/jetbrains/java/decompiler/modules/decompiler/exps/InvocationExprent.java
index d72870ee498d9da075a08dc6e2afef906ba44ad2..1c822f357c117f4bc8af4ced1842421d2224af18 100644
--- a/src/org/jetbrains/java/decompiler/modules/decompiler/exps/InvocationExprent.java
+++ b/src/org/jetbrains/java/decompiler/modules/decompiler/exps/InvocationExprent.java
@@ -59,6 +59,8 @@ public class InvocationExprent extends Exprent {
private List<Exprent> lstParameters = new ArrayList<>();
private List<PooledConstant> bootstrapArguments;
private List<VarType> genericArgs = new ArrayList<>();
+ private boolean forceBoxing = false;
+ private boolean forceUnboxing = false;
public InvocationExprent() {
super(EXPRENT_INVOCATION);
@@ -261,10 +263,10 @@ public class InvocationExprent extends Exprent {
}
if (isStatic) {
- if (isBoxingCall() && canIgnoreBoxing) {
+ if (isBoxingCall() && canIgnoreBoxing && !forceBoxing) {
// process general "boxing" calls, e.g. 'Object[] data = { true }' or 'Byte b = 123'
// here 'byte' and 'short' values do not need an explicit narrowing type cast
- ExprProcessor.getCastedExprent(lstParameters.get(0), descriptor.params[0], buf, indent, false, false, false, false, tracer);
+ ExprProcessor.getCastedExprent(lstParameters.get(0), descriptor.params[0], buf, indent, false, false, true, false, tracer);
return buf;
}
@@ -310,16 +312,36 @@ public class InvocationExprent extends Exprent {
TextUtil.writeQualifiedSuper(buf, super_qualifier);
}
else if (instance != null) {
- TextBuffer res = instance.toJava(indent, tracer);
-
- if (isUnboxingCall()) {
+ VarType leftType = new VarType(CodeConstants.TYPE_OBJECT, 0, classname);
+ if (isUnboxingCall() && !forceUnboxing) {
// we don't print the unboxing call - no need to bother with the instance wrapping / casting
- buf.append(res);
+ if (instance.type == Exprent.EXPRENT_FUNCTION) {
+ FunctionExprent func = (FunctionExprent)instance;
+ if (func.getFuncType() == FunctionExprent.FUNCTION_CAST && func.getLstOperands().get(1).type == Exprent.EXPRENT_CONST) {
+ ConstExprent _const = (ConstExprent)func.getLstOperands().get(1);
+ boolean skipCast = false;
+
+ if (func.getLstOperands().get(0).type == Exprent.EXPRENT_VAR) {
+ VarType inferred = func.getLstOperands().get(0).getInferredExprType(leftType);
+ skipCast = inferred.type != CodeConstants.TYPE_OBJECT ||
+ DecompilerContext.getStructContext().instanceOf(inferred.value, this.classname);
+ } else if (this.classname.equals(_const.getConstType().value)) {
+ skipCast = true;
+ }
+
+ if (skipCast) {
+ buf.append(func.getLstOperands().get(0).toJava(indent, tracer));
+ return buf;
+ }
+ }
+ }
+ buf.append(instance.toJava(indent, tracer));
return buf;
}
+ TextBuffer res = instance.toJava(indent, tracer);
+
VarType rightType = instance.getExprType();
- VarType leftType = new VarType(CodeConstants.TYPE_OBJECT, 0, classname);
if (rightType.equals(VarType.VARTYPE_OBJECT) && !leftType.equals(rightType)) {
buf.append("((").append(ExprProcessor.getCastTypeName(leftType)).append(")");
@@ -417,8 +439,85 @@ public class InvocationExprent extends Exprent {
}
}
- boolean firstParameter = true;
int start = isEnum ? 2 : 0;
+ List<Exprent> parameters = new ArrayList<>(lstParameters);
+ VarType[] types = Arrays.copyOf(descriptor.params, descriptor.params.length);
+ for (int i = start; i < parameters.size(); i++) {
+ Exprent par = parameters.get(i);
+ if (par.type == Exprent.EXPRENT_INVOCATION) {
+ InvocationExprent inv = (InvocationExprent)par;
+ // "unbox" invocation parameters, e.g. 'byteSet.add((byte)123)' or 'new ShortContainer((short)813)'
+ //However, we must make sure we don't accidentally make the call ambiguous.
+ //An example being List<Integer>, remove(Integer.valueOf(1)) and remove(1) are different functions
+ if (inv.isBoxingCall()) {
+ Exprent value = inv.lstParameters.get(0);
+ types[i] = value.getExprType(); //Infer?
+ //Unboxing in this case is lossy, so we need to explicitly set the type
+ if (types[i].typeFamily == CodeConstants.TYPE_FAMILY_INTEGER) {
+ types[i] =
+ "java/lang/Short".equals(inv.classname) ? VarType.VARTYPE_SHORT :
+ "java/lang/Byte".equals(inv.classname) ? VarType.VARTYPE_BYTE :
+ "java/lang/Integer".equals(inv.classname) ? VarType.VARTYPE_INT :
+ VarType.VARTYPE_CHAR;
+ }
+
+ int count = 0;
+ StructClass stClass = DecompilerContext.getStructContext().getClass(classname);
+ if (stClass != null) {
+ nextMethod:
+ for (StructMethod mt : stClass.getMethods()) {
+ if (name.equals(mt.getName())) {
+ MethodDescriptor md = MethodDescriptor.parseDescriptor(mt.getDescriptor());
+ if (md.params.length == descriptor.params.length) {
+ for (int x = 0; x < md.params.length; x++) {
+ if (md.params[x].typeFamily != descriptor.params[x].typeFamily &&
+ md.params[x].typeFamily != types[x].typeFamily) {
+ continue nextMethod;
+ }
+ }
+ count++;
+ }
+ }
+ }
+ }
+
+ if (count != matches.size()) { //We become more ambiguous? Lets keep the explicit boxing
+ types[i] = descriptor.params[i];
+ inv.forceBoxing = true;
+ } else {
+ value.addBytecodeOffsets(inv.bytecode); //Keep the bytecode for matching/debug
+ parameters.set(i, value);
+ }
+ }
+ // We also need to care about when things are intentionally unboxed to call a different overloaded method,
+ //and skipping unboxing causes us to call ourselves.
+ // EXA:
+ // int compare(Integer a, Integer b) { return this.compare(a.intValue(), b.intValue()); }
+ // int compare(int a, int b) { return a - b; }
+ // Allowing the first function to unbox would cause infinite recursion
+ // Right now it just do a quick check, but a proper check would be to do compiler like inference of argument
+ // types, and check unboxing as needed. Currently it causes some false forces
+ else if (inv.isUnboxingCall() && !inv.shouldForceUnboxing()) {
+ StructClass stClass = DecompilerContext.getStructContext().getClass(classname);
+ for (StructMethod mt : stClass.getMethods()) {
+ if (name.equals(mt.getName()) && !stringDescriptor.equals(mt.getDescriptor())) {
+ MethodDescriptor md = MethodDescriptor.parseDescriptor(mt.getDescriptor());
+ if (md.params.length == descriptor.params.length) {
+ if (md.params[i].type == CodeConstants.TYPE_OBJECT) {
+ if (DecompilerContext.getStructContext().instanceOf(inv.getInstance().getExprType().value, md.params[i].value)) {
+ inv.forceUnboxing(true);
+ break;
+ }
+ }
+ }
+ }
+ }
+ }
+ }
+ }
+
+
+ boolean firstParameter = true;
for (int i = start; i < lstParameters.size(); i++) {
if (mask == null || mask.get(i) == null) {
TextBuffer buff = new TextBuffer();
@@ -453,7 +552,7 @@ public class InvocationExprent extends Exprent {
*/
// 'byte' and 'short' literals need an explicit narrowing type cast when used as a parameter
- ExprProcessor.getCastedExprent(lstParameters.get(i), descriptor.params[i], buff, indent, true, ambiguous, true, true, tracer);
+ ExprProcessor.getCastedExprent(lstParameters.get(i), types[i], buff, indent, true, ambiguous, true, true, tracer);
// the last "new Object[0]" in the vararg call is not printed
if (buff.length() > 0) {
@@ -506,7 +605,7 @@ public class InvocationExprent extends Exprent {
}
if (paramType == CodeConstants.TYPE_BYTECHAR || paramType == CodeConstants.TYPE_SHORTCHAR) {
- if (classname.equals("java/lang/Character")) {
+ if (classname.equals("java/lang/Character") || classname.equals("java/lang/Short")) {
return true;
}
}
@@ -565,6 +664,18 @@ public class InvocationExprent extends Exprent {
return !isStatic && lstParameters.size() == 0 && classname.equals(UNBOXING_METHODS.get(name));
}
+ public boolean shouldForceBoxing() {
+ return forceBoxing;
+ }
+
+ public void forceUnboxing(boolean value) {
+ this.forceUnboxing = value;
+ }
+
+ public boolean shouldForceUnboxing() {
+ return this.forceUnboxing;
+ }
+
private List<StructMethod> getMatchedDescriptors() {
List<StructMethod> matches = new ArrayList<>();
StructClass cl = DecompilerContext.getStructContext().getClass(classname);
@@ -594,6 +705,8 @@ public class InvocationExprent extends Exprent {
return EMPTY_BIT_SET;
}
+ BitSet missed = new BitSet(lstParameters.size());
+
// check if a call is unambiguous
StructMethod mt = cl.getMethod(InterpreterUtil.makeUniqueKey(name, stringDescriptor));
if (mt != null) {
@@ -603,18 +716,50 @@ public class InvocationExprent extends Exprent {
for (int i = 0; i < md.params.length; i++) {
if (!md.params[i].equals(lstParameters.get(i).getExprType())) {
exact = false;
- break;
+ missed.set(i);
}
}
if (exact) return EMPTY_BIT_SET;
}
}
+ List<StructMethod> mtds = new ArrayList<>();
+ for (StructMethod mtt : matches) {
+ boolean failed = false;
+ MethodDescriptor md = MethodDescriptor.parseDescriptor(mtt.getDescriptor());
+ for (int i = 0; i < lstParameters.size(); i++) {
+ VarType ptype = lstParameters.get(i).getExprType();
+ if (!missed.get(i)) {
+ if (!md.params[i].equals(ptype)) {
+ failed = true;
+ break;
+ }
+ }
+ else {
+ if (md.params[i].type == CodeConstants.TYPE_OBJECT) {
+ if (ptype.type != CodeConstants.TYPE_NULL) {
+ if (!DecompilerContext.getStructContext().instanceOf(ptype.value, md.params[i].value)) {
+ failed = true;
+ break;
+ }
+ }
+ }
+ }
+ }
+ if (!failed) {
+ mtds.add(mtt);
+ }
+ }
+ //TODO: This still causes issues in the case of:
+ //add(Object)
+ //add(Object...)
+ //Try and detect varargs/array?
+
// mark parameters
BitSet ambiguous = new BitSet(descriptor.params.length);
for (int i = 0; i < descriptor.params.length; i++) {
VarType paramType = descriptor.params[i];
- for (StructMethod mtt : matches) {
+ for (StructMethod mtt : mtds) {
GenericMethodDescriptor gen = mtt.getSignature(); //TODO: Find synthetic flags for params, as Enum generic signatures do no contain the String,int params
if (gen != null && gen.parameterTypes.size() > i && gen.parameterTypes.get(i).isGeneric()) {
diff --git a/testData/results/TestPrimitives.dec b/testData/results/TestPrimitives.dec
index a7d1557e6814e071df65c610fbdae860c8ff93bc..07e818e12a3a4371d3cb76ab613b119837332525 100644
--- a/testData/results/TestPrimitives.dec
+++ b/testData/results/TestPrimitives.dec
@@ -3,6 +3,26 @@ package pkg;
import java.util.HashMap;
public class TestPrimitives {
+ private void testInvalidUnboxing() {
+ List<Integer> lst = null;// 7
+ lst.remove(Integer.valueOf(0));// 8
+ this.genericBoxing((short)0);// 9
+ int a = this.genericReturn(lst);// 10
+ List<Byte> b = null;// 11
+ this.genericParameter(b, (byte)0);// 12
+ this.genericParameter(lst, 0);// 13
+ }// 14
+
+ private <T> void genericBoxing(T value) {
+ }// 16
+
+ private <T> T genericReturn(List<T> value) {
+ return value.get(0);// 17
+ }
+
+ private <T> void genericParameter(List<T> p, T v) {
+ }// 18
+
public void printAll() {
this.printBoolean(true);// 8
this.printByte((byte)123);// 9
@@ -171,179 +191,498 @@ public class TestPrimitives {
}
class 'pkg/TestPrimitives' {
- method 'printAll ()V' {
- 0 4
- 1 4
- 2 4
- 3 4
- 4 4
- 5 5
- 6 5
- 7 5
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+ method 'testInvalidUnboxing ()V' {
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+ }
+
+ method 'genericBoxing (Ljava/lang/Object;)V' {
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+ }
+
+ method 'genericReturn (Ljava/util/List;)Ljava/lang/Object;' {
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+ }
+
+ method 'genericParameter (Ljava/util/List;Ljava/lang/Object;)V' {
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+ }
+
+ method 'printAll ()V' {
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